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Structure-directing factors when introducing hydrogen bond functionality to metal?organic frameworks

机译:将氢键官能团引入金属有机骨架时的结构导向因素

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摘要

The introduction of H-bond donor/acceptor functionality into metal-organic frameworks (MOFs) can have a beneficial effect on their molecular recognition, uptake selectivity and catalytic properties. The changes in ligand geometry induced by incorporation of functional groups may also affect the topology and composition of the resultant MOFs. Herein, we present a comprehensive study of functional group incorporation into MOFs, linked by either Zn2+ paddlewheel units or monomeric Zn2+ corners, which exhibit pcu and dia topology, respectively. Crystallographic analysis shows that amide groups can be easily incorporated into isoreticular pcu pillared-MOFs, whilst integration of urea units results in materials with dia topology. Molecular simulations allow the examination of hypothetical structures with differing constitutions and topologies, and highlight the influence of the urea units in generating the experimentally observed topologies. Noncovalent interactions between independent nets may be significant structure-directing influences, a finding which has great implications for the design of MOFs containing more complex functional groups
机译:将H键供体/受体官能团引入金属有机骨架(MOF)可以对其分子识别,吸收选择性和催化性能产生有益影响。由官能团的引入引起的配体几何形状的变化也可能影响所得MOF的拓扑和组成。本文中,我们对功能基团并入MOF进行了全面的研究,这些功能基团通过分别显示pcu和dia拓扑结构的Zn2 +桨轮单元或单体Zn2 +角连接。晶体学分析表明,酰胺基可以很容易地掺入到网状pcu柱状MOF中,而尿素单元的整合会导致材料具有直径拓扑。分子模拟可以检查具有不同组成和拓扑结构的假设结构,并突出显示尿素单元对生成实验观察到的拓扑结构的影响。独立网络之间的非共价相互作用可能是重要的结构导向影响,这一发现对包含更复杂官能团的MOF的设计具有重大意义

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